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Fabrication of Mo5SiB2-based composites by combustion synthesis involving aluminothermic reduction of MoO3

机译:通过燃烧合成制造MO5SIB2基复合材料,涉及MOO3的铝热量减少的燃烧合成

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Fabrication of Mo5SiB2-Al2O3 composites with a broad range of the Mo5SiB2-Al2O3 ratio was conducted by thermite-based combustion synthesis in the SHS mode. Thermite reagents of MoO3 + 2Al were introduced into two Mo-Si-B ternary systems adopting amorphous boron and MoB as their respective boron source. The boron-containing samples were more energetic and were applied to produce composites with Mo5SiB2-Al2O3 from 1.25 to 2.5, beyond which combustion was extinct. The composites with Mo5SiB2-Al2O3 from 0.8 to 1.3 were prepared from less exothermic MoB-based samples. Besides causing a decrease in combustion velocity and reaction temperature, the increase of the Mo5SiB2-Al2O3 proportion led to a transformation in combustion wave propagation from a steady to pulsating mode. For the samples featuring a pulsating combustion wave, the reaction time at peak combustion temperatures was extended and then the evolution of Mo5SiB2 from intermediate phases (Mo3Si and MoB) was significantly improved. The deduced activation energy suggests a lower kinetic barrier for thermite-based combustion synthesis to fabricate Mo5SiB2-based composites. The microstructure of synthesized composites indicates that quadrangular Mo5SiB2 grains with an average size of 10-15 mu m are tightly packed and irregular Al2O3 grains are randomly dispersed.
机译:通过SHS模式的热轧酯燃烧合成进行具有宽范围MO5SIB2-AL2O3比的MO5SIB2-AL2O3复合材料的制备。将MOO3 + 2的热质试剂引入到采用无定形硼和MOB作为各自的硼源的两个Mo-Si-B三元体系中。含硼样品更具活力,并施用以产生与Mo5Sib2-Al2O3的复合材料,从1.25到2.5,超出哪个燃烧灭绝。使用0.8至1.3的MO5SIB2-AL2O3的复合材料由较少的放热基于暴体的样品制备。除了导致燃烧速度和反应温度的降低,MO5SIB2-AL2O3比例的增加导致燃烧波传播的变换从稳定到脉动模式。对于具有脉动燃烧波的样品,峰值燃烧温度下的反应时间延伸,然后从中间阶段(MO3SI和MOB)的MO5SIB2的演变显着改善。推导的激活能量表明,基于热轧物的燃烧合成的动力学屏障是制造基于MO5SIB2的复合材料的较低动力学屏障。合成复合材料的微观结构表明,平均尺寸为10-15μm的四分之一MO5SIB2晶粒是紧密包装的,并且随机分散不规则的Al 2 O 3晶粒。

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